Dominant role of nitrogen stoichiometric flexibility in ecosystem carbon storage under elevated CO2
文献类型: 外文期刊
第一作者: Zou, Junliang
作者: Zou, Junliang;Li, Qianyu;Osborne, Bruce;Osborne, Bruce;Luo, Yiqi
作者机构:
关键词: Carbon sequestration; Global change; Meta-analysis; Nitrogen; Stoichiometry; C-N interaction
期刊名称:SCIENCE OF THE TOTAL ENVIRONMENT ( 影响因子:7.963; 五年影响因子:7.842 )
ISSN: 0048-9697
年卷期: 2020 年 747 卷
页码:
收录情况: SCI
摘要: Interactions between the carbon (C) and nitrogen (N) cycles can impact on the sensitivity of terrestrial C storage to elevated atmospheric carbon dioxide (CO2) concentrations (eCO(2)). However, the underlying mechanisms associated with C-N interactions that influence terrestrial ecosystemC sequestration (C-seq) remains unclear. Here, we quantitatively analyzed published C and N responses to experimentally eCO(2) using a meta-analysis approach. We determined the relative importance of three principal mechanisms (changes in the total ecosystem N amount, redistribution of N between plant and soil pools, and flexibility of the C:N ratio) that contribute to increases in ecosystem C storage in response to eCO(2). Our results showed that eCO(2) increased C and N accumulation, resulted in higher C:N ratios in plant, litter, and soil pools and induced a net shift of N from soils to vegetation. These three mechanisms largely explained the increment of ecosystem Cseq under eCO(2), although the relative contributions differed across ecosystem types, with changes in the C:N ratio contributing 50% of the increment in forests C-seq, while the total N change contributed 60% of the increment in grassland C-seq. In terms of temporal variation in the relative importance of each of these three mechanisms to ecosystem C-seq: changes in the C:N ratio was the most important mechanismduring the early years (similar to 5 years) of eCO(2) treatment, whilst the contribution to ecosystem C-seq byN redistribution remained rather small, and the contribution by total N change did not show a clear temporal pattern. This study highlights the differential contributions of the three mechanisms to C-seq, which may offer important implications for future predictions of the C cycle in terrestrial ecosystems subjected to global change. (C) 2020 Elsevier B.V. All rights reserved.
分类号:
- 相关文献
作者其他论文 更多>>
-
Contrasting drought sensitivity of Eurasian and North American grasslands
作者:Yu, Qiang;Gu, Qian;Dong, Shikui;Yu, Qiang;Xu, Chong;Wu, Honghui;Xin, Xiaoping;Xu, Chong;Wu, Honghui;Ke, Yuguang;Wang, Hongqiang;Xin, Xiaoping;Zuo, Xiaoan;Luo, Wentao;Ma, Wang;Wang, Zhengwen;Ren, Haiyan;Knapp, Alan K.;Smith, Melinda D.;Collins, Scott L.;Rudgers, Jennifer A.;Luo, Yiqi;Hautier, Yann;Wang, Chengjie;Han, Guodong;Jiang, Yong;Han, Xingguo;Gao, Yingzhi;Gao, Yingzhi;He, Nianpeng;Zhu, Juntao;Yu, Guirui;Li, Linghao;Han, Xingguo
关键词:
-
Identification and characterization of a broadly neutralizing and protective nanobody against the HA1 domain of H5 avian influenza virus hemagglutinin
作者:Xu, Siqi;Liu, Yutong;Zhou, Mengruo;Wang, Ke;Xie, Qianmei;Zhang, Qi;Zhang, Qinying;Li, Qianyu;Pan, Zhichao;Feng, Saixiang;Liao, Ming;Luo, Chenying;Liao, Ming;Liao, Ming
关键词:influenza virus; yeast two-hybrid; nanobody; broadly neutralizing; surface plasmon resonance; inhibition mechanism; prophylactic; therapeutic; epitope mapping
-
Contrasting effects of water deficits and rewetting on greenhouse gas emissions in two grassland and forest ecosystems
作者:Zou, Junliang;Cacciotti, Erica;Benanti, Giuseppi;Zhang, Yun;Tobin, Brian;Osborne, Bruce;Tobin, Brian;Osborne, Bruce;Saunders, Matthew;Zou, Junliang;Zou, Junliang
关键词:Climate change; Drought; Rewetting; Warming; Greenhouse gas emission
-
Underappreciated role of canopy nitrogen deposition for forest productivity
作者:Li, Xiaowei;Zhang, Chenlu;Zhang, Beibei;Jiang, Li;Tang, Shengqi;Sun, Chenhui;Bai, Yulong;Wang, Yubang;Shi, Yifei;Ma, Lei;Ort, Donald;Li, Xiaowei;Zhang, Chenlu;Zhang, Beibei;Jiang, Li;Tang, Shengqi;Sun, Chenhui;Bai, Yulong;Wang, Yubang;Shi, Yifei;Ma, Lei;Ort, Donald;Li, Xiaowei;Zhang, Chenlu;Shi, Yifei;Ort, Donald;Li, Xiaowei;Zhang, Chenlu;Zhang, Wei;Ye, Qing;Yan, Junhua;Wang, Keya;Ort, Donald;Shi, Yifei;Yan, Junhua;Wang, Keya;Fu, Juemin;Du, Wenzhi;Wan, Shiqiang;Hong, Liang;Fang, Yunting;Siemann, Evan;Luo, Yiqi;Reich, Peter B.;Reich, Peter B.;Reich, Peter B.
关键词:nitrogen deposition; forest canopy; carbon sequestration; 15 N recovery
-
Contrasting Exogenous and Endogenous Soil Microbial Carbon Use Efficiencies Under Global Changes
作者:Sun, Xiaodong;Qin, Xiaobo;Wang, Bin;Li, Yue;Cai, Andong;Sun, Xiaodong;Zhang, Chenyang;Xu, Minggang;Zhou, Zhenghu;Kuzyakov, Yakov;Kuzyakov, Yakov;Luo, Yiqi;Wang, Xuhui
关键词:carbon input; drought; global changes; microbial endogenous carbon use efficiency; microbial exogenous carbon use efficiency; nutrient inputs; warming
-
Responses of soil bacterial and fungal community structure and functions to different plant species in a mixed forest plantation in a semi-arid region of China
作者:Ma, Xiaodong;Zou, Junliang;Wu, Juying
关键词:Soil microbiome; Plantation; Tree species; Co-occurrence network; Northern China; Functional groups
-
Alpine meadow degradation regulates soil microbial diversity via decreasing plant production on the Qinghai-Tibetan Plateau
作者:Sun, Yu;Yang, Yongsheng;Zhang, Mingyang;Zhou, Huakun;Li, Jiexia;Sun, Yu;Yang, Yongsheng;Zhang, Mingyang;Zhou, Huakun;Sun, Yu;Zhang, Xiujuan;Wu, Chu;Zhang, Yuheng;Wang, Junbang;Zou, Junliang;Yang, Yongsheng
关键词:Alpine meadow degradation; Bacterial diversity; Fungal diversity; Above -ground biomass; Below -ground biomass